工业水处理 ›› 2025, Vol. 45 ›› Issue (3): 193-197. doi: 10.19965/j.cnki.iwt.2024-0161

• 试验研究 • 上一篇    下一篇

高COD含氟废水的处理研究

唐向阳1(), 万军2, 孙建阳3, 闫岩3   

  1. 1. 中海石油化学股份有限公司,北京 100029
    2. 海洋石油富岛有限公司,海南 东方 572600
    3. 中海油天津化工研究设计院有限公司,天津 300131
  • 收稿日期:2024-12-23 出版日期:2025-03-20 发布日期:2025-03-24
  • 作者简介:

    唐向阳(1970— ),副高级工程师,E-mail:

Study on treatment of high COD fluorine-containing wastewater

Xiangyang TANG1(), Jun WAN2, Jianyang SUN3, Yan YAN3   

  1. 1. China BlueChemical Ltd. , Beijing 100029, China
    2. CNOOC Fudao Co. , Ltd. , Dongfang 572600, China
    3. CenerTech Tianjin Chemical Research and Design Institute Co. , Ltd. , Tianjin 300131, China
  • Received:2024-12-23 Online:2025-03-20 Published:2025-03-24

摘要:

针对高COD含氟有机废水难以处理的问题,开发了一种新型复合除氟剂TS-F1,在相同条件下考察TS-F1、CaCl2、AlCl3对不同COD的含氟有机废水的去氟效果,并考察了TS-F1投加量、反应时间、反应温度对TS-F1去除含氟有机废水中氟离子效果的影响。结果发现:TS-F1除氟剂具有较高的除氟率,优于传统的CaCl2和AlCl3除氟剂,能够将氟离子质量浓度从50 mg/L降至1.5 mg/L以下,达到《地表水环境质量标准》(GB 3838—2002)地表水Ⅳ类排放标准;随着TS-F1投加量的增加、反应时间的延长、温度的增加,氟离子去除率增大。结果还发现,COD对氟离子去除率有显著影响,当COD≤60 mg/L时,TS-F1除氟剂能够达到最佳的除氟效果,而当COD>60 mg/L时,可以通过催化氧化技术进行预处理,降低废水中COD至60 mg/L以下再去除氟离子。TS-F1除氟剂是一种高效、经济的除氟剂,该研究为实际工程中高COD含氟有机废水处理提供了参考。

关键词: 含氟废水, 除氟剂, 催化氧化

Abstract:

To address the challenge of high COD fluorine-containing organic wastewater, a novel composite defluorinating agent, TS-F1, was developed. The defluorination performance of TS-F1 was compared with commonly used defluorinating agents, CaCl2 and AlCl3, under identical conditions for organic wastewater with different COD levels. The effects of TS-F1 dosage, reaction time, and reaction temperature on the removal of fluoride ions from fluorine-containing organic wastewater were also investigated. The results indicated that TS-F1 exhibited a higher defluorination rate compared to traditional CaCl2 and AlCl3 defluorinating agents, reducing the fluoride ion concentration from 50 mg/L to below 1.5 mg/L, which could meet the Class Ⅳ discharge standard of the Environmental Quality Standards for Surface Water (GB 3838-2002). Additionally, the defluorination rate increased with the increase of TS-F1 dosage, reaction time, and temperature. The study also found that COD significantly affected the defluorination rate. When COD≤60 mg/L, TS-F1 achieved optimal defluorination performance. For COD>60 mg/L, catalytic oxidation pretreatment was required to reduce COD to below 60 mg/L before defluorination. TS-F1 was an efficient and economical defluorinating agent. The study provided a reference for the treatment of high COD fluorine-containing organic wastewater in practical engineering.

Key words: fluorine-containing wastewater, defluorinating agent, catalytic oxidation

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